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Performance Enhancement of Micro Grid System with SMES Storage System Based on Mine Blast Optimization Algorithm

机译:基于矿山爆炸优化算法的中小企业存储系统微电网系统性能提升

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摘要

Frequency control represents a critically significant issue for the enhancement of the dynamic performance of isolated micro grids. The micro grid system studied here was a wind−diesel system. A new and robust optimization technique called the mine blast algorithm (MBA) was designed for tuning the PID (proportional−integral−differential) gains of the blade pitch controller of the wind turbine side and the gains of the superconducting magnetic energy storage (SMES) controller. SMES was implemented to release and absorb active power quickly in order to achieve a balance between generation and load power, and thereby control system frequency. The minimization of frequency and output wind power deviations were considered as objective functions for the PID controller of the wind turbine, and the diesel frequency and power deviations were used as objective functions for optimizing the SMES controller gains. Different case studies were considered by applying disturbances in input wind, load power, and wind gust, and sensitivity analysis was conducted by applying harsh conditions with varying fluid coupling parameter of the wind−diesel hybrid system. The proposed MBA−SMES was compared with MBA (tuned PID pitch controller) and classical PI control systems in the Matlab environment. Simulation results showed that the MBA−SMES scheme damped the oscillations in the system output responses and improved the system performance by reducing the overshoot by 75% and 36% from classical and MBA-based systems, respectively, reduced the settling time by 45% compared to other systems, and set the final steady-state error of the frequency deviation to zero compared to other systems. The proposed scheme was extremely robust to disturbances and parameter variations.
机译:频率控制代表了增强孤立的微网格的动态性能的批判性重要问题。这里研究的微电网系统是风力柴油系统。一种新的和鲁棒的优化技术,称为矿爆炸算法(MBA),设计用于调谐风力涡轮机侧的PID(比例积分)增益和超导磁能存储(SME)的增益控制器。实施中小企业被实施以快速释放和吸收有效功率,以实现发电和负载功率之间的平衡,从而控制系统频率。频率和输出风力偏差的最小化被认为是风力涡轮机PID控制器的目标函数,并且柴油频率和功率偏差被用作优化SMES控制器增益的客观函数。通过在输入风,负载功率和风阵风中应用扰动来考虑不同的案例研究,并通过对风柴油混合系统的不同流体耦合参数进行苛刻条件进行灵敏度分析。将所提出的MBA-SME与MATLAB环境中的MBA(调谐PID间距控制器)和经典PI控制系统进行比较。仿真结果表明,MBA-SMES方案在系统输出响应中抑制了系统输出响应中的振荡,并通过将过冲将过冲分别从经典和MBA的系统中减少75%和36%来提高了系统性能,比较了45%的沉降时间对于其他系统,并将频率偏差的最终稳态误差设置为与其他系统相比为零。该方案对干扰和参数变化非常强大。

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